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Statistical optimisation of process variables and large-scale production of Metarhizium rileyi (Ascomycetes: Hypocreales) microsclerotia in submerged fermentation

机译:统计变量的优化和淹没发酵中大麦原核小菌的大规模生产

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Microsclerotia (MS) formation was successfully induced in Metarhizium rileyi (Ascomycetes: Hypocreales) in liquid culture. To optimise the process variables of liquid fermentation, we first used a two-level fraction design to confirm the variables, including inoculum density, initial pH, shaker speed, and temperature, affecting M. rileyi MS production. Three variables were found to be important. Subsequently, a 2~(3) full factorial central composite design (CCD) and response surface methodology were applied to ascertain the optimal level of each variable. A second-order polynomial was determined and shaker speed and inoculum density were found to be the primary variables affecting MS yields. Finally, we realised and optimised M. rileyi MS submerged fermentation based on previous findings. A maximum MS yields (3.84?×?10~(4)?MS/mL) were recorded in submerged fermentation at an initial pH of 5.5, growth temperature of 26°C, inoculum density of 10%, higher aeration rate (150?rpm in the initial 3?days and 200?rpm in the subsequent 3?days), and higher agitation rate of 800?L/h sterile air.
机译:在液体培养的莱姆梅尔塔氏菌(Metarhizium rileyi)(子囊菌:Hypocreales)中成功诱导了微菌核(MS)的形成。为了优化液体发酵的过程变量,我们首先使用两级分馏设计来确认变量,包括接种密度,初始pH,摇床速度和温度,这些都会影响M。 rileyi MS生产。发现三个变量很重要。随后,采用2〜(3)全因子中心复合设计(CCD)和响应面方法确定每个变量的最佳水平。确定了二阶多项式,发现摇床速度和接种密度是影响MS产量的主要变量。最后,我们实现并优化了 M。 rileyi MS根据以前的发现进行了深层发酵。在初始pH为5.5,生长温度为26°C,接种密度为10%,通气率较高(150?在最初的3天中,每分钟转数rpm,在随后的3天中,每分钟转数200 rpm),以及更高的无菌空气搅拌速度(800升/小时)。

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